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Heterozygous CAV1 frameshift mutations (MIM 601047) in patients with atypical partial lipodystrophy and
Henian Cao1, Lindsay Alston, Jennifer Ruschman
1Vascular Biology Group, Robarts Research Institute, London, Ontario, Canada. hcao@robarts.ca
Background:
Mice with a deleted Cav1 gene encoding caveolin-1 develop adipocyte abnormalities and insulin resistance. From genomic DNA of patients with atypical lipodystrophy and hypertriglyceridemia who had no mutations in any known lipodystrophy gene, we used DNA sequence analysis to screen the coding regions of human CAV1 (MIM 601047).
Results:
We found a heterozygous frameshift mutation in CAV1, designated I134fsdelA-X137, in a female patient who had atypical partial lipodystrophy, with subcutaneous fat loss affecting the upper part of her body and face, but sparing her legs, gluteal region and visceral fat stores. She had severe type 5 hyperlipoproteinemia, with recurrent pancreatitis. In addition, she had some atypical features, including congenital cataracts and neurological findings. Her father was also heterozygous for this mutation, and had a similar pattern of fat redistribution, hypertriglyceridemia and congenital cataracts, with milder neurological involvement. An unrelated patient had a different heterozygous frameshift mutation in the CAV1 gene, designated -88delC. He also had a partial lipodystrophy phenotype, with subcutaneous fat loss affecting the arms, legs and gluteal region, but sparing his face, neck and visceral fat stores. He also had severe type 5 hyperlipoproteinemia, with recurrent pancreatitis; however he had no clinically apparent neurological manifestations. The mutations were absent from the genomes of 1063 healthy individuals.
Conclusion:
Thus, very rare CAV1 frameshift mutations appear to be associated with atypical lipodystrophy and hypertriglyceridemia.
Insights
Rare frameshift mutations in the CAV1 gene are linked to atypical lipodystrophy and hypertriglyceridemia. These genetic changes affect fat distribution and can cause severe health issues like pancreatitis.
Area of Science:
- Genetics
- Molecular Biology
- Endocrinology
Background:
- Caveolin-1 (CAV1) is crucial for adipocyte function; its absence in mice causes insulin resistance.
- Patients with unexplained atypical lipodystrophy and hypertriglyceridemia were screened for CAV1 mutations.
Purpose of the Study:
- To investigate the role of the CAV1 gene in atypical lipodystrophy and hypertriglyceridemia.
- To identify genetic mutations in CAV1 associated with these conditions.
Main Methods:
- DNA sequence analysis of the coding regions of the human CAV1 gene.
- Screening of patients with atypical lipodystrophy and hypertriglyceridemia.
- Genotyping of healthy individuals to confirm mutation absence.
Main Results:
- Two distinct heterozygous frameshift mutations in CAV1 (I134fsdelA-X137 and -88delC) were identified in unrelated patients.
- Patients presented with partial lipodystrophy, severe hypertriglyceridemia (type 5 hyperlipoproteinemia), and recurrent pancreatitis.
- Congenital cataracts and neurological findings were observed in one family with the I134fsdelA-X137 mutation.
Conclusions:
- Rare CAV1 frameshift mutations are associated with atypical lipodystrophy.
- These mutations may also contribute to hypertriglyceridemia and related metabolic complications.
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